The THOMSON MICRON NT34-010-0-RM090-27 is a True Planetary planetary gear reducer, belonging to the NemaTRUE series of THOMSON Micron. Here is a detailed introduction about this product:
I. Product Features
Type and Structure:
Type: True Planetary planetary gear reducer
Structure: Utilizes a planetary gear transmission structure, featuring high torque, high precision, and low backlash.
Size: Size 34, suitable for various application scenarios.
Transmission Ratio and Side Clearance:
Transmission Ratio: The specific transmission ratio may vary depending on the model, but multiple reduction ratios are typically available to meet different application requirements.
Side Clearance: 13 arc-degrees (varies for some models), the low backlash design helps eliminate positioning errors caused by ineffective operation.
Output Shaft and Housing:
Output Shaft: Stainless steel output shaft, featuring high strength and corrosion resistance.
Housing: Anodized aluminum housing, providing robust durability while preventing corrosion.
Installation System:
Uses Thomson’s innovative Micron® RediMount system for upgrades, providing error-free motor installation.
The RediMount™ system can install any motor with just 3 simple steps: alignment, installation, and tightening.
Bearings and Gears:
Sealed deep-hole ball bearings provide high radial load capacity, allowing belt pulleys and gears to be directly installed on the output shaft.
HRC 55-60 hard gears offer excellent wear resistance and higher side clearance integrity.
Other Features:
High torque size ratio, allowing for compact design.
Inertia matching to maintain stable control of the servo system.
High rigidity to provide the optimal system response.
Self-lubrication design, eliminating maintenance costs and downtime.

Application fields
The THOMSON MICRON NT34-010-0-RM090-27 reducer is widely used in various industrial automation fields that require high precision, high torque and low backlash, including but not limited to:
Robot: As the joint drive motor of the robot, it provides high-precision position control and rapid dynamic response.
Automation production line: It is used to drive various equipment on the production line, such as conveyors, assembly lines, etc.
Precision CNC machine tools: It is used to achieve high-precision feed and positioning control of the machine tool.
Aerospace: In the aerospace field, it is used to drive various precision equipment, such as satellite antennas, flight control mechanisms, etc.
Medical equipment: In medical equipment, it is used to achieve high-precision motion control, such as surgical robots, imaging equipment, etc.

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